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Damage Identification in Various Types of Composite Plates Using Guided Waves Excited by a Piezoelectric Transducer and Measured by a Laser Vibrometer

机译:压电换能器激励的导波和激光测振仪测量的各种类型复合板的损伤识别

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摘要

Composite materials are widely used in the industry, and the interest of this material is growing rapidly, due to its light weight, strength and various other desired mechanical properties. However, composite materials are prone to production defects and other defects originated during exploitation, which may jeopardize the safety of such a structure. Thus, non-destructive evaluation methods that are material-independent and suitable for a wide range of defects identification are needed. In this paper, a technique for damage characterization in composite plates is proposed. In the presented non-destructive testing method, guided waves are excited by a piezoelectric transducer, attached to tested specimens, and measured by a scanning laser Doppler vibrometer in a dense grid of points. By means of signal processing, irregularities in wavefield images caused by any material defects are extracted and used for damage characterization. The effectiveness of the proposed technique is validated on four different composite panels: Carbon fiber-reinforced polymer, glass fiber-reinforced polymer, composite reinforced by randomly-oriented short glass fibers and aluminum-honeycomb core sandwich composite. Obtained results confirm its versatility and efficacy in damage characterization in various types of composite plates.
机译:复合材料在工业中被广泛使用,并且由于其重量轻,强度和各种其他所需的机械性能,对该材料的兴趣正在迅速增长。然而,复合材料易于产生生产缺陷以及在开发过程中产生的其他缺陷,这可能会危害这种结构的安全性。因此,需要一种非破坏性的评估方法,该方法与材料无关并且适用于广泛的缺陷识别。本文提出了一种复合材料板的损伤表征技术。在提出的非破坏性测试方法中,导波由压电换能器激发,附着在测试样本上,并由扫描激光多普勒振动计在密集的点阵中进行测量。通过信号处理,提取由任何材料缺陷引起的波场图像中的不规则性,并将其用于损伤表征。在四种不同的复合板上验证了该技术的有效性:碳纤维增强的聚合物,玻璃纤维增​​强的聚合物,随机取向的短玻璃纤维增​​强的复合材料以及铝蜂窝芯夹心复合材料。所得结果证实了其在各种类型的复合板的损伤表征中的多功能性和有效性。

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